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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Effects of azole treatments on the physical properties of Candida albicans plasma membrane: A spin probe EPR study
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Effects of azole treatments on the physical properties of Candida albicans plasma membrane: A spin probe EPR study

机译:唑治疗对念珠菌血浆膜的物理性质的影响:旋转探针EPR研究

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EPR spectroscopy was applied to investigate the effects of the treatment of Candida albicans cells with fluconazole (FLC) and two newly synthesized azoles (CPA18 and CPA109), in a concentration not altering yeast morphology, on the lipid organization and dynamics of the plasma membrane. Measurements were performed in the temperature range between 0 C and 40 C using 5-doxyl- (5-DSA) and 16-doxyl- (16-DSA) stearic acids as spin probes. 5-DSA spectra were typical of lipids in a highly ordered environment, whereas 16-DSA spectra consisted of two comparable components, one corresponding to a fluid bulk lipid domain in the membrane and the other to highly ordered and motionally restricted lipids interacting with integral membrane proteins. A line shape analysis allowed the relative proportion and the orientational order and dynamic parameters of the spin probes in the different environments to be determined. Smaller order parameters, corresponding to a looser lipid packing, were found for the treated samples with respect to the control one in the region close to the membrane surface probed by 5-DSA. On the other hand, data on 16-DSA indicated that azole treatments hamper the formation of ordered lipid domains hosting integral proteins and/or lead to a decrease in integral protein content in the membrane. The observed effects are mainly ascribable to the inhibition of ergosterol biosynthesis by the antifungal agents, although a direct interaction of the CPA compounds with the membrane bilayer in the region close to the lipid polar head groups cannot be excluded. (C) 2013 Elsevier B.V. All rights reserved.
机译:应用EPR光谱学探讨念珠菌(FLC)治疗念珠菌(FLC)和两种新合成的唑(CPA18和CPA109)的影响,浓度在不改变酵母形态的脂质组织和质膜的动力学中。使用5-二×(5-DSA)和16- dsa)硬脂酸作为旋转探针,在0℃和40℃的温度范围内进行测量。 5-DSA光谱是典型的脂质在高度有序的环境中,而16-DSA光谱由两个可比较的组分组成,与膜中的流体脂质结构域相对应,另一个以高度有序的和运动限制脂质与整体膜相互作用蛋白质。线形状分析允许确定在不同环境中的旋转探针的相对比例和定义顺序和动态参数。对应于松动脂质填料的较小订单参数,用于对接近由5-DSA探测的膜表面的区域中的对照中的对照进行处理过的样品。另一方面,关于16-DSA的数据表明,唑唑处理阻碍了托管整体蛋白的有序脂质结构域的形成和/或导致膜中整体蛋白质含量的降低。观察到的效果主要是由抗真菌剂抑制Ergosterol生物合成的,尽管不能排除CPA化合物与靠近脂质极性头部的区域中的膜双层的直接相互作用。 (c)2013年elestvier b.v.保留所有权利。

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